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1)  plasma-induced graft polymerization
等离子体诱导接枝聚合
1.
A series of environmental responsive gating membranes were prepared by grafting methacrylic acid(MAA) onto two organic substrates,including porous polyvinylidene fluoride(PVDF) membranes and nylon(N6) membranes,and onto inorganic substrate porous anodic aluminum(PAA) membranes,with plasma-induced graft polymerization.
采用等离子体诱导接枝聚合法,在有机聚偏氟乙烯(PVDF)膜、尼龙(N6)膜和无机多孔阳极氧化铝(PAA)膜上接枝甲基丙烯酸(MAA),系统地研究了多孔膜基材及接枝工艺条件对接枝开关膜微观结构的影响。
2)  plasma-induced pore-filling graft polymerization
等离子体诱导填孔接枝聚合
3)  plasma-graft pore-filling polymerization
等离子体填孔接枝聚合
1.
Oil soluble Fe3O4 nanoparticles were synthesized,and magnetic thermo-responsive microcapsules were prepared by using the interfacial polymerization method,and then plasma-graft pore-filling polymerization was performed to graft PNIPAM into the pores of microcapsule membranes.
合成了亲油Fe3O4纳米颗粒,然后采用界面聚合法制备了磁性聚酰胺多孔微囊膜,最后用等离子体填孔接枝聚合法将聚N-异丙基丙烯酰胺(PNIPAM)接枝到微囊的多孔膜上,制得了磁性温度感应微囊膜。
4)  plasma induced graft polymerization
等离子体引发接枝聚合
5)  thermally induced graft polymerization
热诱导接枝聚合
6)  Plasma grafting polymeriz
等离子接枝聚合法
补充资料:辐射诱导接枝聚合
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性质:由辐射作用在主干聚合物上形成活性中心,引发单体接枝聚合到主干聚合物上的聚合过程。活性中心主要是自由基。当形成的自由基较为稳定时,可在惰性气体中辐照主干聚合物后再加入单体,这样能避免生成接枝单体均聚物。也可对接枝单体与主干聚合物混合体系进行辐照来制备。

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